Plant Cell Culture Technology Section, Nuclear Agriculture and Biotechnology Division, Bhabha Atomic Research Centre, Mumbai, India.
Homi Bhabha National Institute, Mumbai, India.
Plant Cell Rep. 2022 May;41(5):1197-1208. doi: 10.1007/s00299-022-02849-y. Epub 2022 Mar 4.
Senescence-associated transcription factor ATAF2 regulates cytokinin signalling and in vitro shoot multiplication in banana plants. MusaATAF2-like protein is a stress-related NAC transcription factor of banana. It regulates senescence in rooted banana plants. During the early stages of plant development under in vitro conditions, the presence of 6-benzylaminopurine leads to vigorous shoot multiplication. The major contributor to plant shoot multiplication is auxin to cytokinin ratio and their signalling components. The LC-MS analysis of transgenic banana plants overexpressing MusaATAF2 indicated significantly higher cytokinin content and remarkably lower auxin content. Auxin transport has been reported to be inhibited by flavonoids. Their significantly higher abundance in the shoot tissues in transgenic lines suggested potential negative regulation of auxin signalling in transgenic plants. Enhanced shoot multiplication in transgenic lines was further corroborated by reduced transcript abundance of type-A Arabidopsis response regulator-like genes (inhibitors of cytokinin signalling pathway) and higher expression of Arabidopsis histidine kinase-like genes and type-B Arabidopsis response regulator-like genes (positive regulators of cytokinin signalling pathway) in transgenic lines. Altogether, the data concludes that MusaATAF2 induces cytokinin hypersensitivity in banana shoots by modulating/regulating the cytokinin signalling components and flavonoids content.
衰老相关转录因子 ATAF2 调控细胞分裂素信号和香蕉离体芽增殖。MusaATAF2-like 蛋白是香蕉中一种与应激相关的 NAC 转录因子。它调控生根香蕉植株的衰老。在离体条件下植物发育的早期阶段,6-苄氨基嘌呤的存在导致芽的大量增殖。植物芽增殖的主要贡献者是生长素与细胞分裂素的比例及其信号成分。过表达 MusaATAF2 的转基因香蕉植物的 LC-MS 分析表明细胞分裂素含量显著升高,生长素含量显著降低。据报道,黄酮类化合物抑制生长素的运输。在转基因系中,它们在芽组织中的丰度显著增加,表明在转基因植物中生长素信号的潜在负调控。在转基因系中,拟南芥反应调节因子 A 型基因(细胞分裂素信号途径抑制剂)的转录物丰度降低,拟南芥组氨酸激酶样基因和拟南芥反应调节因子 B 型基因(细胞分裂素信号途径的正调节剂)的表达水平升高,进一步证实了增强的芽增殖。总之,这些数据表明 MusaATAF2 通过调节/调控细胞分裂素信号成分和类黄酮含量,诱导香蕉芽对细胞分裂素的超敏反应。